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RTX 毒素通过保护生物体免受吞噬作用来增强创伤弧菌感染期间的生存能力。

RTX toxin enhances the survival of Vibrio vulnificus during infection by protecting the organism from phagocytosis.

机构信息

Institute of Basic Medical Sciences, Taiwan, Republic of China.

出版信息

J Infect Dis. 2011 Jun 15;203(12):1866-74. doi: 10.1093/infdis/jir070. Epub 2011 Mar 21.

Abstract

Vibrio vulnificus is a marine bacterium causing serious septicemia and wound infection in humans. It produces an RTX toxin that can lyse a variety of cells and is important for virulence in mice. In this study, we explored the role of RTX in pathogenesis by characterizing an RTX-deficient mutant. This mutant showed an ∼2-log reduction in virulence for mice infected by various routes. Survival of the mutant at the infection site and subsequent spread into the bloodstream were impaired. In mice pretreated with cyclophosphamide to deplete the neutrophils, both the virulence and survival at the infection site of this mutant were enhanced. This mutant was further shown to be more readily cleared from the macrophage-rich mouse peritoneal cavity and phagocytosed by murine macrophages. These findings suggest that the RTX of V. vulnificus is required for bacterial survival during infection by protecting the organism from phagocytosis.

摘要

创伤弧菌是一种海洋细菌,可导致人类严重的败血病和伤口感染。它产生一种 RTX 毒素,可裂解多种细胞,对小鼠的毒力很重要。在这项研究中,我们通过表征 RTX 缺陷突变体来探索 RTX 在发病机制中的作用。该突变体在经各种途径感染的小鼠中的毒力降低了约 2 个对数级。在感染部位的生存能力和随后向血液中的传播受到损害。在用环磷酰胺预处理以耗尽中性粒细胞的小鼠中,该突变体的毒力和在感染部位的生存能力均增强。进一步表明,这种突变体更容易从富含巨噬细胞的小鼠腹腔中清除,并被鼠巨噬细胞吞噬。这些发现表明,创伤弧菌的 RTX 通过保护生物体免受吞噬作用,在感染过程中细菌的存活是必需的。

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